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Use of mineral/solution equilibrium calculations to assess the potential for carnotite precipitation from groundwater in the Texas Panhandle, USA
Anthony J. Ranalli, Douglas B. Yager
2016, Applied Geochemistry (73) 118-131
This study investigated the potential for the uranium mineral carnotite (K2(UO2)2(VO4)2·3H2O) to precipitate from evaporating groundwater in the Texas Panhandle region of the United States. The evolution of groundwater chemistry during evaporation was modeled with the USGS geochemical code PHREEQC using water-quality data from 100 groundwater wells downloaded from the...
Circumpolar distribution and carbon storage of thermokarst landscapes
David Olefeldt, S. Goswami, G. Grosse, D. Hayes, G. Hugelius, P. Kuhry, A. David McGuire, V.E. Romanovsky, A. B. K. Sannel, E.A.G. Schuur, M.R. Turetsky
2016, Nature Communications (7) 1-11
Thermokarst is the process whereby the thawing of ice-rich permafrost ground causes land subsidence, resulting in development of distinctive landforms. Accelerated thermokarst due to climate change will damage infrastructure, but also impact hydrology, ecology and biogeochemistry. Here, we present a circumpolar assessment of the distribution of thermokarst landscapes, defined as...
Laboratory evaluation of the Design Analysis Associates DAA H-3613i radar water-level sensor—Results of temperature, distance, and SDI-12 tests
Mark V. Carnley
2016, Open-File Report 2016-1124
The Design Analysis Associates (DAA) DAA H-3613i radar water-level sensor (DAA H-3613i), manufactured by Xylem Incorporated, was evaluated by the U.S. Geological Survey (USGS) Hydrologic Instrumentation Facility (HIF) for conformance to manufacturer’s accuracy specifications for measuring a distance throughout the sensor’s operating temperature range, for measuring distances from 3 to...
Characterizing changes in streamflow and sediment supply in the Sacramento River Basin, California, using hydrological simulation program—FORTRAN (HSPF)
Michelle A. Stern, Lorraine E. Flint, Justin Toby Minear, Alan L. Flint, Scott Wright
2016, Water (8) 432
A daily watershed model of the Sacramento River Basin of northern California was developed to simulate streamflow and suspended sediment transport to the San Francisco Bay-Delta. To compensate for sparse data, a unique combination of model inputs was developed, including meteorological variables, potential evapotranspiration, and parameters defining hydraulic geometry. A...
Geologic structure of the Yucaipa area inferred from gravity data, San Bernardino and Riverside Counties, California
Gregory O. Mendez, Victoria E. Langenheim, Andrew Morita, Wesley R. Danskin
2016, Open-File Report 2016-1127
In the spring of 2009, the U.S. Geological Survey, in cooperation with the San Bernardino Valley Municipal Water District, began working on a gravity survey in the Yucaipa area to explore the three-dimensional shape of the sedimentary fill (alluvial deposits) and the surface of the underlying crystalline basement rocks....
Using inferential sensors for quality control of Everglades Depth Estimation Network water-level data
Matthew D. Petkewich, Ruby C. Daamen, Edwin A. Roehl, Paul Conrads
2016, Scientific Investigations Report 2016-5094
The Everglades Depth Estimation Network (EDEN), with over 240 real-time gaging stations, provides hydrologic data for freshwater and tidal areas of the Everglades. These data are used to generate daily water-level and water-depth maps of the Everglades that are used to assess biotic responses to hydrologic change resulting from the...
Altitudes and thicknesses of hydrogeologic units of the Ozark Plateaus aquifer system in Arkansas, Kansas, Missouri, and Oklahoma
Drew A. Westerman, Jonathan A. Gillip, Joseph M. Richards, Phillip D. Hays, Brian R. Clark
2016, Scientific Investigations Report 2016-5130
A hydrogeologic framework was constructed to represent the altitudes and thicknesses of hydrogeologic units within the Ozark Plateaus aquifer system as part of a regional groundwater-flow model supported by the U.S. Geological Survey Water Availability and Use Science Program. The Ozark Plateaus aquifer system study area is nearly 70,000 square...
U.S. Geological Survey science for the Wyoming Landscape Conservation Initiative—2015 annual report
Zachary H. Bowen, Cameron L. Aldridge, Patrick J. Anderson, Timothy J. Assal, Timothy T. Bartos, Anna D. Chalfoun, Geneva W. Chong, Marie K. Dematatis, Cheryl A. Eddy-Miller, Steven L. Garman, Stephen S. Germaine, Collin G. Homer, Matthew J. Kauffman, Christopher C. Huber, Daniel J. Manier, Cynthia P. Melcher, Kirk A. Miller, Tamar Norkin, Lindsey E. Sanders, Annika W. Walters, Anna B. Wilson, Teal B. Wyckoff
2016, Open-File Report 2016-1141
This is the eighth annual report highlighting U.S. Geological Survey (USGS) science and decision-support activities conducted for the Wyoming Landscape Conservation Initiative (WLCI). The activities address specific management needs identified by WLCI partner agencies. In 2015, USGS scientists continued 24 WLCI projects in 5 categories: (1) acquiring and analyzing resource-condition data...
Aquatic biological communities and associated habitats at selected sites in the Big Wood River Watershed, south-central Idaho, 2014
Dorene E. MacCoy, Terry M. Short
2016, Scientific Investigations Report 2016-5128
Assessments of streamflow (discharge) parameters, water quality, physical habitat, and biological communities were completed between May and September 2014 as part of a monitoring program in the Big Wood River watershed of south-central Idaho. The sampling was conducted by the U.S. Geological Survey in cooperation with Blaine County, Trout Unlimited,...
Discharge, water temperature, and water quality of Warm Mineral Springs, Sarasota County, Florida: A retrospective analysis
Patricia A. Metz
2016, Open-File Report 2016-1166
Warm Mineral Springs, located in southern Sarasota County, Florida, is a warm, highly mineralized, inland spring. Since 1946, a bathing spa has been in operation at the spring, attracting vacationers and health enthusiasts. During the winter months, the warm water attracts manatees to the adjoining spring run and provides vital...
Simulation of groundwater withdrawal scenarios for the Redwall-Muav and Coconino Aquifer Systems of northern and central Arizona
D. R. Pool
2016, Scientific Investigations Report 2016-5115
The Northern Arizona Regional Groundwater Flow Model was used to estimate the hydrologic changes, including water-level change and groundwater discharge to streams and springs, that may result from future changes in groundwater withdrawals in and near the Coconino Plateau Water Advisory Council study area, Coconino and Navajo Counties, Arizona....
Simulating groundwater flow in karst aquifers with distributed parameter models—Comparison of porous-equivalent media and hybrid flow approaches
Eve L. Kuniansky
2016, Scientific Investigations Report 2016-5116
Understanding karst aquifers, for purposes of their management and protection, poses unique challenges. Karst aquifers are characterized by groundwater flow through conduits (tertiary porosity), and (or) layers with interconnected pores (secondary porosity) and through intergranular porosity (primary or matrix porosity). Since the late 1960s, advances have been made in the...
Observations of nearshore groundwater discharge: Kahekili Beach Park submarine springs, Maui, Hawaii
Peter W. Swarzenski, H. Dulai, K.D. Kroeger, Christopher G. Smith, N. Dimova, C. D. Storlazzi, N.G. Prouty, S. B. Gingerich, C. R. Glenn
2016, Journal of Hydrology: Regional Studies (11) 147-165
Study regionThe study region encompasses the nearshore, coastal waters off west Maui, Hawaii. Here abundant groundwater—that carries with it a strong land-based fingerprint—discharges into the coastal waters and over a coral reef.Study focusCoastal groundwater discharge is a ubiquitous hydrologic feature that has been shown to impact...
Flood-inundation map library for the Licking River and South Fork Licking River near Falmouth, Kentucky
Jeremiah G. Lant
2016, Scientific Investigations Report 2016-5108
Digital flood inundation maps for a 17-mile reach of Licking River and 4-mile reach of South Fork Licking River near Falmouth, Kentucky, were created by the U.S. Geological Survey (USGS) in cooperation with Pendleton County and the U.S. Army Corps of Engineers–Louisville District. The inundation maps, which can be accessed...
Comparison of methods for quantifying surface sublimation over seasonally snow-covered terrain
Graham A. Sexstone, David W. Clow, David I. Stannard, Steven R. Fassnacht
2016, Hydrological Processes (30) 3373-3389
Snow sublimation can be an important component of the snow-cover mass balance, and there is considerable interest in quantifying the role of this process within the water and energy balance of snow-covered regions. In recent years, robust eddy covariance (EC) instrumentation has been used to quantify snow sublimation over snow-covered...
Prerequisites for understanding climate-change impacts on northern prairie wetlands
Michael J. Anteau, Mark T. Wiltermuth, Max Post van der Burg, Aaron T. Pearse
2016, Wetlands (36) 299-307
The Prairie Pothole Region (PPR) contains ecosystems that are typified by an extensive matrix of grasslands and depressional wetlands, which provide numerous ecosystem services. Over the past 150 years the PPR has experienced numerous landscape modifications resulting in agricultural conversion of 75–99 % of native prairie uplands and drainage of...
Water temperature effects from simulated dam operations and structures in the Middle Fork Willamette River, western Oregon
Norman L. Buccola, Daniel F. Turner, Stewart A. Rounds
2016, Open-File Report 2016-1159
Significant FindingsStreamflow and water temperature in the Middle Fork Willamette River (MFWR), western Oregon, have been regulated and altered since the construction of Lookout Point, Dexter, and Hills Creek Dams in 1954 and 1961, respectively. Each year, summer releases from the dams typically are cooler than pre-dam conditions, with the...
Paleoflood investigations to improve peak-streamflow regional-regression equations for natural streamflow in eastern Colorado, 2015
Michael S. Kohn, Michael R. Stevens, Tessa M. Harden, Jeanne E. Godaire, Ralph E. Klinger, Amanullah Mommandi
2016, Scientific Investigations Report 2016-5099
The U.S. Geological Survey (USGS), in cooperation with the Colorado Department of Transportation, developed regional-regression equations for estimating the 50-, 20-, 10-, 4-, 2-, 1-, 0.5-, 0.2-percent annual exceedance-probability discharge (AEPD) for natural streamflow in eastern Colorado. A total of 188 streamgages, consisting of 6,536 years of record and a...
HESS Opinions: Repeatable research: what hydrologistscan learn from the Duke cancer research scandal
Michael Fienen, Mark Bakker
2016, Hydrology and Earth System Sciences (20) 3739-3743
In the past decade, difficulties encountered in reproducing the results of a cancer study at Duke University resulted in a scandal and an investigation which concluded that tools used for data management, analysis, and modeling were inappropriate for the documentation of the study, let alone the reproduction of the results....
Altered hydrologic and geomorphic processes and bottomland hardwood plant communities of the lower White River Basin
Sammy L. King, Richard F. Keim, Cliff R. Hupp, Brandon L. Edwards, Whitney A. Kroschel, Erin L. Johnson, J. Wesley Cochran
2016, Open-File Report 2016-1113
Introduction The work explained in this report was conducted to assess geomorphic adjustment of the lower White River, Arkansas, to hydrologic modifications and establish forest age and community structure within selected communities within the floodplain. Also, the HEC–GeoRAS model was evaluated for predicting flood depth and duration within the floodplain. Hydrologic...
Projected wetland densities under climate change: Habitat loss but little geographic shift in conservation strategy
Helen Sofaer, Susan K. Skagen, Joseph J. Barsugli, Benjamin S. Rashford, Gordon C. Reese, Jennifer A. Hoeting, Andrew W. Wood, Barry R. Noon
2016, Ecological Applications (26) 1677-1692
Climate change poses major challenges for conservation and management because it alters the area, quality, and spatial distribution of habitat for natural populations. To assess species’ vulnerability to climate change and target ongoing conservation investments, researchers and managers often consider the effects of projected changes in climate and land use...
Science center capabilities to monitor and investigate Michigan’s water resources, 2016
Julia A. Giesen, Carrie E. Givens
2016, Fact Sheet 2016-3064
Michigan faces many challenges related to water resources, including flooding, drought, water-quality degradation and impairment, varying water availability, watershed-management issues, stormwater management, aquatic-ecosystem impairment, and invasive species. Michigan’s water resources include approximately 36,000 miles of streams, over 11,000 inland lakes, 3,000 miles of shoreline along the Great Lakes (MDEQ, 2016),...
Holocene paleoclimate inferred from salinity histories of adjacent lakes in southwestern Sicily (Italy)
B Brandon Curry, Paul D. Henne, Francesc Mezquita-Joanes, Federico Marrone, Valentina Pieri, Tommaso La Mantia, Camilla Calo, Willy Tinner
2016, Quaternary Science Reviews (150) 67-83
Marked uncertainties persist regarding the climatic evolution of the Mediterranean region during the Holocene. For instance, whether moisture availability gradually decreased, remained relatively constant, or increased during the last 7000 years remains a matter of debate. To assess Holocene limnology, hydrology and moisture dynamics, the coastal lakes Lago Preola and...
Tropical storm Irene flood of August 2011 in northwestern Massachusetts
Gardner C. Bent, Scott A. Olson, Andrew J. Massey
2016, Scientific Investigations Report 2016-5027
A Presidential disaster was declared in northwestern Massachusetts, following flooding from tropical storm Irene on August 28, 2011. During the storm, 3 to 10 inches of rain fell on soils that were susceptible to flash flooding because of wet antecedent conditions. The gage height at one U.S. Geological Survey streamgage...
Pleistocene Lake Bonneville as an analog for extraterrestrial lakes and oceans
M.A. Chan, P. Jewell, T. J. Parker, J. Ormo, Chris Okubo, G. Komatsu
2016, Book chapter, Developments in earth surface processes, Volume 20
Geomorphic confirmation for a putative ancient Mars ocean relies on analog comparisons of coastal-like features such as shoreline feature attributes and temporal scales of process formation. Pleistocene Lake Bonneville is one of the few large, geologically young, terrestrial lake systems that exemplify well-preserved shoreline characteristics that formed quickly, on the...